Liu Benguo, Li Yun, Xiao Huizhi, Liu Yonglan, Mo Haizhen, Ma Hanjun, Liang Guizhao
School of Food Science, Henan Inst. of Science and Technology, Xinxiang, 453003, People's Republic of China.
Key Laboratory of Biorheological Science and Technology, Ministry of Education, Bioengineering College, Chongqing Univ, 400044, People's Republic of China.
J Food Sci. 2015 Jun;80(6):C1156-61. doi: 10.1111/1750-3841.12845. Epub 2015 Apr 27.
Polydatin is the main bioactive ingredient in many medicinal plants, such as Hu-zhang (Polygonum cuspidatum), with many bioactivities. However, its poor aqueous solubility restricts its application in functional food. In this work, 6-O-α-Maltosyl-β-cyclodextrin (Malt-β-CD), a new kind of β-CD derivative was used to enhance the aqueous solubility and stability of polydatin by forming the inclusion complex. The phase solubility study showed that polydatin and Malt-β-CD could form the complex with the stoichiometric ratio of 1:1. The supermolecular structure of the polydatin/Malt-β-CD complex was characterized by ultraviolet-visible spectroscopy (UV), Fourier transform infrared spectroscopy (FT-IR), X-ray diffractometry (XRD), thermogravimetric/differential scanning calorimetry (TG/DSC), and proton nuclear magnetic resonance ((1) H-NMR) spectroscopy. The changes of the characteristic spectral and thermal properties of polydatin suggested that polydatin could entrap inside the cavity of Malt-β-CD. Furthermore, to reasonably understand the complexation mode, the supermolecular structure of polydatin/Malt-β-CD inclusion complex was postulated by a molecular docking method based on Autodock 4.2.3. It was clearly observed that the ring B of polydatin oriented toward the narrow rim of Malt-β-CD with ring A and glucosyl group practically exposed to the wide rim by hydrogen bonding, which was in a good agreement with the spectral data.
虎杖苷是许多药用植物(如虎杖)中的主要生物活性成分,具有多种生物活性。然而,其较差的水溶性限制了它在功能性食品中的应用。在本研究中,一种新型的β-环糊精衍生物6-O-α-麦芽糖基-β-环糊精(麦芽-β-环糊精)被用于通过形成包合物来提高虎杖苷的水溶性和稳定性。相溶解度研究表明,虎杖苷与麦芽-β-环糊精能以1:1的化学计量比形成复合物。通过紫外可见光谱(UV)、傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)、热重/差示扫描量热法(TG/DSC)和质子核磁共振((1)H-NMR)光谱对虎杖苷/麦芽-β-环糊精复合物的超分子结构进行了表征。虎杖苷特征光谱和热性质的变化表明虎杖苷能够包埋在麦芽-β-环糊精的空腔内。此外,为了合理理解络合模式,基于Autodock 4.2.3通过分子对接方法推测了虎杖苷/麦芽-β-环糊精包合物的超分子结构。可以清楚地观察到,虎杖苷的B环朝向麦芽-β-环糊精的窄端,而A环和葡萄糖基通过氢键实际上暴露于宽端,这与光谱数据吻合良好。